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首页> 外文期刊>Journal of hydro-environment research >Numerical simulations and experimental visualizations of the vortex characteristics for a solitary wave interacting with a bottom-mounted vertical plate
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Numerical simulations and experimental visualizations of the vortex characteristics for a solitary wave interacting with a bottom-mounted vertical plate

机译:孤波与底部安装的垂直板相互作用的涡旋特性的数值模拟和实验可视化

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摘要

This study is aimed to investigate numerically and experimentally the interaction of a solitary wave with a bottom-mounted vertical thin plate with focuses on the wave induced fluid kinematics and vortex flow patterns. A streamfunction-vorticity free-surface (SVFS) based fully nonlinear viscous wave model solved in a transient boundary-fitted coordinate system with locally overlaid grids is applied to study this wave-plate interaction problem. Qualitative comparisons between numerically generated flow patterns around the plate and the experimental observations, including images from both the particle-tracking and the laser-dye visualization methods, are presented. The shear-layer velocity profiles are compared quantitatively with the experimental measurements. The detailed flow characteristics and formed vortices including the effect of the shape of the plate top on the vortex formation and development are numerically investigated. For a thin vertical plate, the flow characteristics that are affected by the dimensionless parameters of incident-wave height and plate height are also investigated. The numerical visualizations illustrated by the virtual transport of particle-tracing, streamlines, and equi-vorticity lines are useful to understand the kinematic behaviors of the induced vortical motions. Furthermore, the pressure gradient, shear stress, and maximum wave force are examined to detail the hydrodynamic impacts on the submerged plate.
机译:这项研究的目的是在数值和实验上研究孤波与底部安装的垂直薄板之间的相互作用,重点是波引起的流体运动学和涡流模式。基于流函数-涡度自由面(SVFS)的完全非线性粘性波模型,在具有局部覆盖网格的瞬态边界拟合坐标系中求解,用于研究该波板相互作用问题。提出了围绕板的数值生成流型与实验观测值(包括来自粒子跟踪和激光染料可视化方法的图像)之间的定性比较。将剪切层速度曲线与实验测量结果进行定量比较。数值研究了详细的流动特性和形成的涡旋,包括板顶形状对涡旋形成和发展的影响。对于薄的垂直板,还研究了受入射波高度和板高的无量纲参数影响的流动特性。由虚拟的粒子跟踪,流线和等涡度线传输所说明的数字可视化,对于理解诱导的涡旋运动的运动学行为很有用。此外,还检查了压力梯度,切应力和最大波浪力,以详细说明对水下板的水动力影响。

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